Abstract We propose a method to compute the scattering angle for classical black hole scattering directly from two massive particle irreducible diagrams in a heavy-mass effective field theory approach to general relativity, without the need of subtracting iteration terms. The amplitudes in this effective theory are constructed using a recently proposed novel colour-kinematic/double copy for tree-level two-scalar, multi-graviton amplitudes, where the BCJ numerators are gauge invariant and local with respect to the massless gravitons. These tree amplitudes, together with graviton tree amplitudes, enter the construction of the required D-dimensional loop integrands and allow for a direct extraction of contributions relevant for classical physi...
Weoutline the program to apply modern quantum field theory methods to calculate observables in class...
The duality between color and kinematics was originally observed for purely adjoint massless gauge t...
We describe an efficient method for extracting the parts of $D$-dimensional loop integrals that are ...
We propose a method to compute the scattering angle for classical black hole scattering directly fro...
International audienceUsing a heavy-mass effective field theory (HEFT), we study gravitational-wave ...
International audienceUsing a heavy-mass effective field theory (HEFT), we study gravitational-wave ...
This thesis discusses consequences of color-kinematics duality and applications towards computing qu...
In this thesis we present a study of the computation of classical observables in gauge theories and ...
In this thesis we present a study of the computation of classical observables in gauge theories and ...
Quantum field theory is a theoretical framework for the description of nature in terms of fundamenta...
The duality between color and kinematics was originally observed for purely adjoint massless gauge t...
International audienceScattering amplitudes have their origin in quantum field theory, but have wide...
Weoutline the program to apply modern quantum field theory methods to calculate observables in class...
International audienceScattering amplitudes have their origin in quantum field theory, but have wide...
The duality between color and kinematics was originally observed for purely adjoint massless gauge t...
Weoutline the program to apply modern quantum field theory methods to calculate observables in class...
The duality between color and kinematics was originally observed for purely adjoint massless gauge t...
We describe an efficient method for extracting the parts of $D$-dimensional loop integrals that are ...
We propose a method to compute the scattering angle for classical black hole scattering directly fro...
International audienceUsing a heavy-mass effective field theory (HEFT), we study gravitational-wave ...
International audienceUsing a heavy-mass effective field theory (HEFT), we study gravitational-wave ...
This thesis discusses consequences of color-kinematics duality and applications towards computing qu...
In this thesis we present a study of the computation of classical observables in gauge theories and ...
In this thesis we present a study of the computation of classical observables in gauge theories and ...
Quantum field theory is a theoretical framework for the description of nature in terms of fundamenta...
The duality between color and kinematics was originally observed for purely adjoint massless gauge t...
International audienceScattering amplitudes have their origin in quantum field theory, but have wide...
Weoutline the program to apply modern quantum field theory methods to calculate observables in class...
International audienceScattering amplitudes have their origin in quantum field theory, but have wide...
The duality between color and kinematics was originally observed for purely adjoint massless gauge t...
Weoutline the program to apply modern quantum field theory methods to calculate observables in class...
The duality between color and kinematics was originally observed for purely adjoint massless gauge t...
We describe an efficient method for extracting the parts of $D$-dimensional loop integrals that are ...